xref: /src/sys/netpfil/ipfw/ip_fw_table_value.c (revision 9be9ab2a242080dea6254e187cf211604170de07)
1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 2014-2025 Yandex LLC
5  * Copyright (c) 2014 Alexander V. Chernikov
6  *
7  * Redistribution and use in source and binary forms, with or without
8  * modification, are permitted provided that the following conditions
9  * are met:
10  * 1. Redistributions of source code must retain the above copyright
11  *    notice, this list of conditions and the following disclaimer.
12  * 2. Redistributions in binary form must reproduce the above copyright
13  *    notice, this list of conditions and the following disclaimer in the
14  *    documentation and/or other materials provided with the distribution.
15  *
16  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
17  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
18  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
19  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
20  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
21  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
22  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
23  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
24  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
25  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
26  * SUCH DAMAGE.
27  */
28 
29 #include <sys/cdefs.h>
30 /*
31  * Multi-field value support for ipfw tables.
32  *
33  * This file contains necessary functions to convert
34  * large multi-field values into u32 indices suitable to be fed
35  * to various table algorithms. Other machinery like proper refcounting,
36  * internal structures resizing are also kept here.
37  */
38 
39 #include "opt_ipfw.h"
40 
41 #include <sys/param.h>
42 #include <sys/systm.h>
43 #include <sys/malloc.h>
44 #include <sys/kernel.h>
45 #include <sys/hash.h>
46 #include <sys/lock.h>
47 #include <sys/rwlock.h>
48 #include <sys/rmlock.h>
49 #include <sys/socket.h>
50 #include <sys/socketvar.h>
51 #include <sys/queue.h>
52 #include <net/if.h>	/* ip_fw.h requires IFNAMSIZ */
53 
54 #include <netinet/in.h>
55 #include <netinet/ip_var.h>	/* struct ipfw_rule_ref */
56 #include <netinet/ip_fw.h>
57 
58 #include <netpfil/ipfw/ip_fw_private.h>
59 #include <netpfil/ipfw/ip_fw_table.h>
60 
61 static uint32_t hash_table_value(struct namedobj_instance *ni, const void *key,
62     uint32_t kopt);
63 static int cmp_table_value(struct named_object *no, const void *key,
64     uint32_t kopt);
65 
66 static int list_table_values(struct ip_fw_chain *ch, ip_fw3_opheader *op3,
67     struct sockopt_data *sd);
68 
69 static struct ipfw_sopt_handler	scodes[] = {
70     { IP_FW_TABLE_VLIST, IP_FW3_OPVER, HDIR_GET, list_table_values },
71 };
72 
73 #define	CHAIN_TO_VI(chain)	(CHAIN_TO_TCFG(chain)->valhash)
74 
75 struct table_val_link
76 {
77 	struct named_object	no;
78 	struct table_value	*pval;	/* Pointer to real table value */
79 };
80 #define	VALDATA_START_SIZE	64	/* Allocate 64-items array by default */
81 #define	VALDATA_HASH_SIZE	65536
82 
83 struct vdump_args {
84 	struct ip_fw_chain *ch;
85 	struct sockopt_data *sd;
86 	struct table_value *pval;
87 	int error;
88 };
89 
90 static uint32_t
hash_table_value(struct namedobj_instance * ni,const void * key,uint32_t kopt)91 hash_table_value(struct namedobj_instance *ni, const void *key, uint32_t kopt)
92 {
93 
94 	return (hash32_buf(key, 56, 0));
95 }
96 
97 static int
cmp_table_value(struct named_object * no,const void * key,uint32_t kopt)98 cmp_table_value(struct named_object *no, const void *key, uint32_t kopt)
99 {
100 
101 	return (memcmp(((struct table_val_link *)no)->pval, key, 56));
102 }
103 
104 static void
mask_table_value(struct table_value * src,struct table_value * dst,uint32_t mask)105 mask_table_value(struct table_value *src, struct table_value *dst,
106     uint32_t mask)
107 {
108 #define	_MCPY(f, b)	if ((mask & (b)) != 0) { dst->f = src->f; }
109 
110 	memset(dst, 0, sizeof(*dst));
111 	_MCPY(tag, IPFW_VTYPE_TAG);
112 	_MCPY(pipe, IPFW_VTYPE_PIPE);
113 	_MCPY(divert, IPFW_VTYPE_DIVERT);
114 	_MCPY(skipto, IPFW_VTYPE_SKIPTO);
115 	_MCPY(netgraph, IPFW_VTYPE_NETGRAPH);
116 	_MCPY(fib, IPFW_VTYPE_FIB);
117 	_MCPY(nat, IPFW_VTYPE_NAT);
118 	_MCPY(limit, IPFW_VTYPE_LIMIT);
119 	_MCPY(mark, IPFW_VTYPE_MARK);
120 	_MCPY(dscp, IPFW_VTYPE_DSCP);
121 	_MCPY(nh4, IPFW_VTYPE_NH4);
122 	_MCPY(nh6, IPFW_VTYPE_NH6);
123 	_MCPY(zoneid, IPFW_VTYPE_NH6);
124 #undef	_MCPY
125 }
126 
127 static void
get_value_ptrs(struct ip_fw_chain * ch,struct table_config * tc,struct table_value ** ptv,struct namedobj_instance ** pvi)128 get_value_ptrs(struct ip_fw_chain *ch, struct table_config *tc,
129     struct table_value **ptv, struct namedobj_instance **pvi)
130 {
131 	struct table_value *pval;
132 	struct namedobj_instance *vi;
133 
134 	if (tc->vshared != 0) {
135 		pval = (struct table_value *)ch->valuestate;
136 		vi = CHAIN_TO_VI(ch);
137 	} else {
138 		pval = NULL;
139 		vi = NULL;
140 		//pval = (struct table_value *)&tc->ti.data;
141 	}
142 
143 	if (ptv != NULL)
144 		*ptv = pval;
145 	if (pvi != NULL)
146 		*pvi = vi;
147 }
148 
149 /*
150  * Update pointers to real values after @pval change.
151  */
152 static int
update_tvalue(struct namedobj_instance * ni,struct named_object * no,void * arg)153 update_tvalue(struct namedobj_instance *ni, struct named_object *no, void *arg)
154 {
155 	struct vdump_args *da;
156 	struct table_val_link *ptv;
157 	struct table_value *pval;
158 
159 	da = (struct vdump_args *)arg;
160 	ptv = (struct table_val_link *)no;
161 
162 	pval = da->pval;
163 	ptv->pval = &pval[ptv->no.kidx];
164 	ptv->no.name = (char *)&pval[ptv->no.kidx];
165 	return (0);
166 }
167 
168 /*
169  * Grows value storage shared among all tables.
170  * Notifies other running adds on @ch shared storage resize.
171  * Note function does not guarantee that free space
172  * will be available after invocation, so one caller needs
173  * to roll cycle himself.
174  *
175  * Returns 0 if case of no errors.
176  */
177 static int
resize_shared_value_storage(struct ip_fw_chain * ch)178 resize_shared_value_storage(struct ip_fw_chain *ch)
179 {
180 	struct tables_config *tcfg;
181 	struct namedobj_instance *vi;
182 	struct table_value *pval, *valuestate, *old_valuestate;
183 	void *new_idx;
184 	struct vdump_args da;
185 	int new_blocks;
186 	int val_size, val_size_old;
187 
188 	IPFW_UH_WLOCK_ASSERT(ch);
189 
190 	valuestate = NULL;
191 	new_idx = NULL;
192 
193 	pval = (struct table_value *)ch->valuestate;
194 	vi = CHAIN_TO_VI(ch);
195 	tcfg = CHAIN_TO_TCFG(ch);
196 
197 	val_size = tcfg->val_size * 2;
198 
199 	if (val_size == (1 << 30))
200 		return (ENOSPC);
201 
202 	valuestate = malloc(sizeof(struct table_value) * val_size, M_IPFW,
203 	    M_WAITOK | M_ZERO);
204 	ipfw_objhash_bitmap_alloc(val_size, (void *)&new_idx,
205 	    &new_blocks);
206 
207 	/*
208 	 * Check if we still need to resize
209 	 */
210 	if (tcfg->val_size >= val_size)
211 		goto done;
212 
213 	/* Update pointers and notify everyone we're changing @ch */
214 	pval = (struct table_value *)ch->valuestate;
215 
216 	/* Good. Let's merge */
217 	memcpy(valuestate, pval, sizeof(struct table_value) * tcfg->val_size);
218 	ipfw_objhash_bitmap_merge(CHAIN_TO_VI(ch), &new_idx, &new_blocks);
219 
220 	IPFW_WLOCK(ch);
221 	/* Change pointers */
222 	old_valuestate = ch->valuestate;
223 	ch->valuestate = valuestate;
224 	valuestate = old_valuestate;
225 	ipfw_objhash_bitmap_swap(CHAIN_TO_VI(ch), &new_idx, &new_blocks);
226 
227 	val_size_old = tcfg->val_size;
228 	tcfg->val_size = val_size;
229 	val_size = val_size_old;
230 	IPFW_WUNLOCK(ch);
231 	/* Update pointers to reflect resize */
232 	memset(&da, 0, sizeof(da));
233 	da.pval = (struct table_value *)ch->valuestate;
234 	ipfw_objhash_foreach(vi, update_tvalue, &da);
235 
236 done:
237 	free(valuestate, M_IPFW);
238 	ipfw_objhash_bitmap_free(new_idx, new_blocks);
239 
240 	return (0);
241 }
242 
243 /*
244  * Drops reference for table value with index @kidx, stored in @pval and
245  * @vi. Frees value if it has no references.
246  */
247 static void
unref_table_value(struct namedobj_instance * vi,struct table_value * pval,uint32_t kidx)248 unref_table_value(struct namedobj_instance *vi, struct table_value *pval,
249     uint32_t kidx)
250 {
251 	struct table_val_link *ptvl;
252 
253 	KASSERT(pval[kidx].refcnt > 0, ("Refcount is 0 on kidx %d", kidx));
254 	if (--pval[kidx].refcnt > 0)
255 		return;
256 
257 	/* Last reference, delete item */
258 	ptvl = (struct table_val_link *)ipfw_objhash_lookup_kidx(vi, kidx);
259 	KASSERT(ptvl != NULL, ("lookup on value kidx %d failed", kidx));
260 	ipfw_objhash_del(vi, &ptvl->no);
261 	ipfw_objhash_free_idx(vi, kidx);
262 	free(ptvl, M_IPFW);
263 }
264 
265 struct flush_args {
266 	struct ip_fw_chain *ch;
267 	struct table_algo *ta;
268 	struct table_info *ti;
269 	void *astate;
270 	ipfw_obj_tentry tent;
271 };
272 
273 static int
unref_table_value_cb(void * e,void * arg)274 unref_table_value_cb(void *e, void *arg)
275 {
276 	struct flush_args *fa;
277 	struct ip_fw_chain *ch;
278 	struct table_algo *ta;
279 	ipfw_obj_tentry *tent;
280 	int error;
281 
282 	fa = (struct flush_args *)arg;
283 
284 	ta = fa->ta;
285 	memset(&fa->tent, 0, sizeof(fa->tent));
286 	tent = &fa->tent;
287 	error = ta->dump_tentry(fa->astate, fa->ti, e, tent);
288 	if (error != 0)
289 		return (error);
290 
291 	ch = fa->ch;
292 
293 	unref_table_value(CHAIN_TO_VI(ch),
294 	    (struct table_value *)ch->valuestate, tent->v.kidx);
295 
296 	return (0);
297 }
298 
299 /*
300  * Drop references for each value used in @tc.
301  */
302 void
ipfw_unref_table_values(struct ip_fw_chain * ch,struct table_config * tc,struct table_algo * ta,void * astate,struct table_info * ti)303 ipfw_unref_table_values(struct ip_fw_chain *ch, struct table_config *tc,
304     struct table_algo *ta, void *astate, struct table_info *ti)
305 {
306 	struct flush_args fa;
307 
308 	IPFW_UH_WLOCK_ASSERT(ch);
309 
310 	memset(&fa, 0, sizeof(fa));
311 	fa.ch = ch;
312 	fa.ta = ta;
313 	fa.astate = astate;
314 	fa.ti = ti;
315 
316 	ta->foreach(astate, ti, unref_table_value_cb, &fa);
317 }
318 
319 /*
320  * Allocate new value index in either shared or per-table array.
321  *
322  * Returns 0 on success.
323  */
324 static int
alloc_table_vidx(struct ip_fw_chain * ch,struct table_config * tc,struct namedobj_instance * vi,uint32_t * pvidx,uint8_t flags)325 alloc_table_vidx(struct ip_fw_chain *ch, struct table_config *tc,
326     struct namedobj_instance *vi, uint32_t *pvidx, uint8_t flags)
327 {
328 	int error, vlimit;
329 	uint32_t vidx;
330 
331 	IPFW_UH_WLOCK_ASSERT(ch);
332 
333 	if ((error = ipfw_objhash_alloc_idx(vi, &vidx)) != 0 &&
334 	    (error = resize_shared_value_storage(ch)) != 0)
335 		return (error);
336 
337 	vlimit = tc->ta->vlimit;
338 	if (vlimit != 0 && vidx >= vlimit && !(flags & IPFW_CTF_ATOMIC)) {
339 		/*
340 		 * Algorithm is not able to store given index.
341 		 * We have to rollback state, start using
342 		 * per-table value array or return error
343 		 * if we're already using it.
344 		 */
345 		if (tc->vshared != 0) {
346 			/* shared -> per-table  */
347 			return (ENOSPC); /* TODO: proper error */
348 		}
349 
350 		/* per-table. Fail for now. */
351 		return (ENOSPC); /* TODO: proper error */
352 	}
353 
354 	*pvidx = vidx;
355 	return (0);
356 }
357 
358 /*
359  * Drops value reference for unused values (updates, deletes, partially
360  * successful adds or rollbacks).
361  */
362 void
ipfw_garbage_table_values(struct ip_fw_chain * ch,struct table_config * tc,struct tentry_info * tei,uint32_t count,int rollback)363 ipfw_garbage_table_values(struct ip_fw_chain *ch, struct table_config *tc,
364     struct tentry_info *tei, uint32_t count, int rollback)
365 {
366 	int i;
367 	struct tentry_info *ptei;
368 	struct table_value *pval;
369 	struct namedobj_instance *vi;
370 
371 	/*
372 	 * We have two slightly different ADD cases here:
373 	 * either (1) we are successful / partially successful,
374 	 * in that case we need
375 	 * * to ignore ADDED entries values
376 	 * * rollback every other values if atomicity is not
377 	 * * required (either UPDATED since old value has been
378 	 *   stored there, or some failure like EXISTS or LIMIT
379 	 *   or simply "ignored" case.
380 	 *
381 	 * (2): atomic rollback of partially successful operation
382 	 * in that case we simply need to unref all entries.
383 	 *
384 	 * DELETE case is simpler: no atomic support there, so
385 	 * we simply unref all non-zero values.
386 	 */
387 
388 	/*
389 	 * Get current table value pointers.
390 	 */
391 	get_value_ptrs(ch, tc, &pval, &vi);
392 
393 	for (i = 0; i < count; i++) {
394 		ptei = &tei[i];
395 
396 		if (ptei->value == 0) {
397 			/*
398 			 * We may be deleting non-existing record.
399 			 * Skip.
400 			 */
401 			continue;
402 		}
403 
404 		if ((ptei->flags & TEI_FLAGS_ADDED) != 0 && rollback == 0) {
405 			ptei->value = 0;
406 			continue;
407 		}
408 
409 		unref_table_value(vi, pval, ptei->value);
410 		ptei->value = 0;
411 	}
412 }
413 
414 /*
415  * Main function used to link values of entries going to be added,
416  * to the index. Since we may perform many UH locks drops/acquires,
417  * handle changes by checking tablestate "modified" field.
418  *
419  * Success: return 0.
420  */
421 int
ipfw_link_table_values(struct ip_fw_chain * ch,struct table_config * tc,struct tentry_info * tei,uint32_t count,uint8_t flags)422 ipfw_link_table_values(struct ip_fw_chain *ch, struct table_config *tc,
423     struct tentry_info *tei, uint32_t count, uint8_t flags)
424 {
425 	int error, i, found;
426 	struct namedobj_instance *vi;
427 	struct tentry_info *ptei;
428 	uint32_t vidx, vlimit;
429 	struct table_val_link *ptv;
430 	struct table_value tval, *pval;
431 
432 	/*
433 	 * Stage 1: reference all existing values and
434 	 * save their indices.
435 	 */
436 	IPFW_UH_WLOCK_ASSERT(ch);
437 	get_value_ptrs(ch, tc, &pval, &vi);
438 
439 	error = 0;
440 	found = 0;
441 	vlimit = tc->ta->vlimit;
442 	vidx = 0;
443 	for (i = 0; i < count; i++) {
444 		ptei = &tei[i];
445 		ptei->value = 0; /* Ensure value is always 0 in the beginning */
446 		mask_table_value(ptei->pvalue, &tval, tc->vmask);
447 		ptv = (struct table_val_link *)ipfw_objhash_lookup_name(vi, 0,
448 		    (char *)&tval);
449 		if (ptv == NULL)
450 			continue;
451 		/* Deal with vlimit later */
452 		if (vlimit > 0 && vlimit <= ptv->no.kidx)
453 			continue;
454 
455 		/* Value found. Bump refcount */
456 		ptv->pval->refcnt++;
457 		ptei->value = ptv->no.kidx;
458 		found++;
459 	}
460 
461 	if (count == found) {
462 		/* We've found all values, no need to create new ones. */
463 		return (0);
464 	}
465 
466 	/*
467 	 * Stage 2: allocate objects for non-existing values.
468 	 */
469 	for (i = 0; i < count; i++) {
470 		ptei = &tei[i];
471 		if (ptei->value != 0)
472 			continue;
473 		if (ptei->ptv != NULL)
474 			continue;
475 		ptei->ptv = malloc(sizeof(struct table_val_link), M_IPFW,
476 		    M_WAITOK | M_ZERO);
477 	}
478 
479 	/*
480 	 * Stage 3: allocate index numbers for new values
481 	 * and link them to index.
482 	 */
483 	KASSERT(pval == ch->valuestate, ("resize_storage() notify failure"));
484 
485 	/* Let's try to link values */
486 	for (i = 0; i < count; i++) {
487 		ptei = &tei[i];
488 
489 		/* Check if record has appeared */
490 		mask_table_value(ptei->pvalue, &tval, tc->vmask);
491 		ptv = (struct table_val_link *)ipfw_objhash_lookup_name(vi, 0,
492 		    (char *)&tval);
493 		if (ptv != NULL) {
494 			ptv->pval->refcnt++;
495 			ptei->value = ptv->no.kidx;
496 			continue;
497 		}
498 
499 		if ((error = alloc_table_vidx(ch, tc, vi, &vidx, flags)) != 0)
500 			return (error);
501 
502 		/* Finally, we have allocated valid index, let's add entry */
503 		ptei->value = vidx;
504 		ptv = (struct table_val_link *)ptei->ptv;
505 		ptei->ptv = NULL;
506 
507 		ptv->no.kidx = vidx;
508 		ptv->no.name = (char *)&pval[vidx];
509 		ptv->pval = &pval[vidx];
510 		memcpy(ptv->pval, &tval, sizeof(struct table_value));
511 		pval[vidx].refcnt = 1;
512 		ipfw_objhash_add(vi, &ptv->no);
513 	}
514 
515 	return (0);
516 }
517 
518 /*
519  * Imports table value from current userland format.
520  * Saves value in kernel format to the same place.
521  */
522 void
ipfw_import_table_value_v1(ipfw_table_value * iv)523 ipfw_import_table_value_v1(ipfw_table_value *iv)
524 {
525 	struct table_value v;
526 
527 	memset(&v, 0, sizeof(v));
528 	v.tag = iv->tag;
529 	v.pipe = iv->pipe;
530 	v.divert = iv->divert;
531 	v.skipto = iv->skipto;
532 	v.netgraph = iv->netgraph;
533 	v.fib = iv->fib;
534 	v.nat = iv->nat;
535 	v.dscp = iv->dscp;
536 	v.nh4 = iv->nh4;
537 	v.nh6 = iv->nh6;
538 	v.limit = iv->limit;
539 	v.zoneid = iv->zoneid;
540 	v.mark = iv->mark;
541 
542 	memcpy(iv, &v, sizeof(ipfw_table_value));
543 }
544 
545 /*
546  * Export real table value @v to current userland format.
547  * Note that @v and @piv may point to the same memory.
548  */
549 void
ipfw_export_table_value_v1(struct table_value * v,ipfw_table_value * piv)550 ipfw_export_table_value_v1(struct table_value *v, ipfw_table_value *piv)
551 {
552 	ipfw_table_value iv;
553 
554 	memset(&iv, 0, sizeof(iv));
555 	iv.tag = v->tag;
556 	iv.pipe = v->pipe;
557 	iv.divert = v->divert;
558 	iv.skipto = v->skipto;
559 	iv.netgraph = v->netgraph;
560 	iv.fib = v->fib;
561 	iv.nat = v->nat;
562 	iv.dscp = v->dscp;
563 	iv.limit = v->limit;
564 	iv.nh4 = v->nh4;
565 	iv.nh6 = v->nh6;
566 	iv.zoneid = v->zoneid;
567 	iv.mark = v->mark;
568 
569 	memcpy(piv, &iv, sizeof(iv));
570 }
571 
572 /*
573  * Exports real value data into ipfw_table_value structure including refcnt.
574  */
575 static int
dump_tvalue(struct namedobj_instance * ni,struct named_object * no,void * arg)576 dump_tvalue(struct namedobj_instance *ni, struct named_object *no, void *arg)
577 {
578 	struct vdump_args *da;
579 	struct table_val_link *ptv;
580 	ipfw_table_value *v;
581 
582 	da = (struct vdump_args *)arg;
583 	ptv = (struct table_val_link *)no;
584 
585 	v = (ipfw_table_value *)ipfw_get_sopt_space(da->sd, sizeof(*v));
586 	/* Out of memory, returning */
587 	if (v == NULL) {
588 		da->error = ENOMEM;
589 		return (ENOMEM);
590 	}
591 
592 	ipfw_export_table_value_v1(ptv->pval, v);
593 	v->refcnt = ptv->pval->refcnt;
594 	v->kidx = ptv->no.kidx;
595 	return (0);
596 }
597 
598 /*
599  * Dumps all shared/table value data
600  * Data layout (v1)(current):
601  * Request: [ ipfw_obj_lheader ], size = ipfw_obj_lheader.size
602  * Reply: [ ipfw_obj_lheader ipfw_table_value x N ]
603  *
604  * Returns 0 on success
605  */
606 static int
list_table_values(struct ip_fw_chain * ch,ip_fw3_opheader * op3,struct sockopt_data * sd)607 list_table_values(struct ip_fw_chain *ch, ip_fw3_opheader *op3,
608     struct sockopt_data *sd)
609 {
610 	struct _ipfw_obj_lheader *olh;
611 	struct namedobj_instance *vi;
612 	struct vdump_args da;
613 	uint32_t count, size;
614 
615 	olh = (struct _ipfw_obj_lheader *)ipfw_get_sopt_header(sd,sizeof(*olh));
616 	if (olh == NULL)
617 		return (EINVAL);
618 	if (sd->valsize < olh->size)
619 		return (EINVAL);
620 
621 	IPFW_UH_RLOCK(ch);
622 	vi = CHAIN_TO_VI(ch);
623 
624 	count = ipfw_objhash_count(vi);
625 	size = count * sizeof(ipfw_table_value) + sizeof(ipfw_obj_lheader);
626 
627 	/* Fill in header regadless of buffer size */
628 	olh->count = count;
629 	olh->objsize = sizeof(ipfw_table_value);
630 
631 	if (size > olh->size) {
632 		olh->size = size;
633 		IPFW_UH_RUNLOCK(ch);
634 		return (ENOMEM);
635 	}
636 	olh->size = size;
637 
638 	/*
639 	 * Do the actual value dump
640 	 */
641 	memset(&da, 0, sizeof(da));
642 	da.ch = ch;
643 	da.sd = sd;
644 	ipfw_objhash_foreach(vi, dump_tvalue, &da);
645 
646 	IPFW_UH_RUNLOCK(ch);
647 
648 	return (0);
649 }
650 
651 void
ipfw_table_value_init(struct ip_fw_chain * ch,int first)652 ipfw_table_value_init(struct ip_fw_chain *ch, int first)
653 {
654 	struct tables_config *tcfg;
655 
656 	ch->valuestate = malloc(VALDATA_START_SIZE * sizeof(struct table_value),
657 	    M_IPFW, M_WAITOK | M_ZERO);
658 
659 	tcfg = ch->tblcfg;
660 
661 	tcfg->val_size = VALDATA_START_SIZE;
662 	tcfg->valhash = ipfw_objhash_create(tcfg->val_size, VALDATA_HASH_SIZE);
663 	ipfw_objhash_set_funcs(tcfg->valhash, hash_table_value,
664 	    cmp_table_value);
665 
666 	IPFW_ADD_SOPT_HANDLER(first, scodes);
667 }
668 
669 static int
destroy_value(struct namedobj_instance * ni,struct named_object * no,void * arg)670 destroy_value(struct namedobj_instance *ni, struct named_object *no,
671     void *arg)
672 {
673 
674 	free(no, M_IPFW);
675 	return (0);
676 }
677 
678 void
ipfw_table_value_destroy(struct ip_fw_chain * ch,int last)679 ipfw_table_value_destroy(struct ip_fw_chain *ch, int last)
680 {
681 
682 	IPFW_DEL_SOPT_HANDLER(last, scodes);
683 
684 	free(ch->valuestate, M_IPFW);
685 	ipfw_objhash_foreach(CHAIN_TO_VI(ch), destroy_value, ch);
686 	ipfw_objhash_destroy(CHAIN_TO_VI(ch));
687 }
688